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A novel methodology for rapid digestion of rare earth element ores and determination by microwave plasma-atomic emission spectrometry and dynamic reaction cell-inductively coupled plasma-mass spectrometry

机译:稀土元素矿石快速消解和微波等离子体原子发射光谱法和动态反应池电感耦合等离子体质谱法测定的新方法

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摘要

Short-wavelength infrared radiation has been successfully applied to accelerate the acid digestion of refractory rare-earth ore samples. Determinations were achieved with microwave plasma-atomic emission spectrometry (MP-AES) and dynamic reaction cell - inductively coupled plasma-mass spectrometry (DRC-ICP-MS). The digestion method developed was able to tackle high iron-oxide and silicate matrices using only phosphoric acid in a time frame of only 8 min, and did not require perchloric or hydrofluoric acid. Additionally, excellent recoveries and reproducibilities of the rare earth elements, as well as uranium and thorium, were achieved. Digestions of the certified reference materials OREAS-465 and REE-1, with radically different mineralogies, delivered results that mirror those obtained by fusion processes. For the rare-earth CRM OKA-2, whose REE data are provisional, experimental data for the rare-earth elements were generally higher than the provisional values, often exceeding z-values of +2. Determined values for Th and U in this reference material, for which certified values are available, were in excellent agreement. (C) 2016 Elsevier B.V. All rights reserved.
机译:短波红外辐射已成功应用于加速难处理稀土矿石样品的酸消化。测定是通过微波等离子体原子发射光谱法(MP-AES)和动态反应池-电感耦合等离子体质谱法(DRC-ICP-MS)进行的。所开发的消解方法能够在仅8分钟的时间内仅使用磷酸处理高铁氧化物和硅酸盐基质,并且不需要高氯酸或氢氟酸。此外,还实现了稀土元素以及铀和th的极好的回收率和重现性。经认证的参考材料OREAS-465和REE-1的消化(具有完全不同的矿物学)所提供的结果与通过熔融过程获得的结果相似。对于稀土REE数据为临时的CRM CRM OKA-2,稀土元素的实验数据通常高于临时值,通常超过z值+2。该参考材料中Th和U的确定值与可获得的认证值完全一致。 (C)2016 Elsevier B.V.保留所有权利。

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